Genetic inhibition of calcineurin induces diastolic dysfunction in mice with chronic pressure overload

Author:

Gelpi Ricardo J.12,Gao Shumin1,Zhai Peiyong1,Yan Lin1,Hong Chull1,Danridge Lauren M. A.1,Ge Hui1,Maejima Yasahiro1,Donato Martin2,Yokota Mitsuhiro3,Molkentin Jeffery D.4,Vatner Dorothy E.1,Vatner Stephen F.1,Sadoshima Junichi1

Affiliation:

1. Cardiovascular Research Institute and the Department of Cell Biology and Molecular Medicine, University of Medicine and Dentistry of New Jersey, New Jersey Medical School, Newark, New Jersey;

2. Institute of Cardiovascular Physiopathology and the Department of Pathology, Faculty of Medicine, University of Buenos Aires, Buenos Aires, Argentina;

3. Department of Genome Science, Aichi-Gakuin University, School of Dentistry, Nagoya, Japan; and

4. Department of Pediatrics, University of Cincinnati, Children's Hospital Medical Center, and the Howard Hughes Medical Institute, Cincinnati, Ohio

Abstract

Calcineurin is a Ca2+/calmodulin-dependent protein phosphatase that induces myocardial growth in response to several physiological and pathological stimuli. Calcineurin inhibition, induced either via cyclosporine or genetically, can decrease myocardial hypertrophy secondary to pressure overload without affecting left ventricular (LV) systolic function. Since hypertrophy can also affect LV diastolic function, the goal of this study was to examine the effects of chronic pressure overload (2 wk aortic banding) in transgenic (Tg) mice overexpressing Zaki-4β (TgZ), a specific endogenous inhibitor of calcineurin, on LV diastolic function. As expected, in the TgZ mice with calcineurin inhibitor overexpression, aortic banding reduced the degree of LV hypertrophy, as assessed by LV weight-to-body weight ratio (3.5 ± 0.1) compared with that in non-Tg mice (4.6 ± 0.2). LV systolic function remained compensated in both groups with pressure overload. However, the LV end-diastolic stress-to-LV end-diastolic dimension ratio, an index of diastolic stiffness and LV pressure half-time and isovolumic relaxation time, two indexes of isovolumic relaxation, increased significantly more in TgZ mice with aortic banding. Protein levels of phosphorylated phospholamban (PS16), sarco(endo)plasmic reticulum Ca2+-ATPase 2a, phosphorylated ryanodine receptor, and the Na+/Ca2+ exchanger were also reduced significantly ( P < 0.05) in the banded TgZ mice. As expected, genetic calcineurin inhibition inhibited the development of LV hypertrophy with chronic pressure overload but also induced LV diastolic dysfunction, as reflected by both impaired isovolumic relaxation and increased myocardial stiffness. Thus genetic calcineurin inhibition reveals a new mechanism regulating LV diastolic function.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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